US6985497B2

Method and apparatus for network transmission capacity enhancement for the telephone circuit switched network

Summary by NHIP

Network capacity enhancement apparatus

The apparatus increases telephone network capacity by compressing voice signals during silence and bundling them into sub-timeslots within T1 or E1 frames. It routes inband traffic via a first connection, returns traffic via a second connection, and sends outgoing data to a tandem switch via a third connection.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

Adjunct apparatus for increasing network transmission capacity provides a low-cost, efficient solution for increasing the network transmission capacity of the existing telephone circuit switched network, while keeping the current network equipment unchanged. A Local Switch Network (LSN) Adjunct (LSNA) and a Tandem/Toll Switch Network (TSN) Adjunct (TSNA) interface with standard network elements, such as switches and cross connect equipment. These network adjuncts, comprising a set of low-bit rate speech coders, a dynamic timeslot manager and other supporting functions, advantageously transmit to and receive from a T1/T3/OC3/E1 trunk. More than one channel of voice is carried on one 64 Kbps DS0 timeslot, while still maintaining the voice at toll quality. A sub-timeslot and sub-timeslot bundling are introduced in the standard T1 or E1 frame where each sub-timeslot is analogous to a single bit of the typical eight bit word to provide more than 24 or 30 voice channels respectively. Inband control information is generated for carrying over a T1 or E1 trunk, for example, for mapping sub-timeslot bundles to channels. Conventional out-of-band signaling is provided via SS-7 or other out-of-band signaling system.

US6985497B2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Expired 9 November 2021, 4.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

17 claims: 2 independent, 15 dependent

  1. 1
    Broadest claimClaim Score 63, broad(NHIP)Apparatus for increasing the capacity of a telephone circuit switched network, comprising:a first connection for routing inband traffic, from a local switch to said apparatus, said apparatus adapted to compress a voice signal responsive to detecting silence on a busy channel trunk, said apparatus adapted to, prior to transmission to the telephone circuit switched network, put the compressed voice signal and inband control data into a sub-timeslot format;a second connection for routing traffic from said apparatus back to said local switch;a third connection for routing outgoing traffic from said apparatus to a network adjunct connected to a tandem switch that serves said local switch.
  2. 17
    A telephone circuit switched network with dynamically allocable bandwidth, comprising:a plurality of local switch network adjuncts adapted to compress voice signals responsive to detecting silence on busy channel trunks, said local switch network adjuncts adapted to, prior to transmission to the telephone circuit switched network, put the compressed voice signals and inband control data into a sub-timeslot format;a plurality of tandem switch network adjuncts, one of said tandem switch network adjuncts being connected to one of said local switch network adjuncts and being further connected to a tandem switch;a plurality of toll switch network adjuncts, one of said toll switch network adjuncts being connected to one of said tandem switch network adjuncts and being further connected to a toll switch;wherein said local switch network adjuncts, said tandem switch network adjuncts, and said toll switch network adjuncts communicate information using reformatted frame sub-timeslots.